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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Progress in Cherenkov femtosecond fiber lasers
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Progress in Cherenkov femtosecond fiber lasers

机译:Cherenkov飞秒光纤激光器的研究进展

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摘要

We review the recent developments in the field of ultrafast Cherenkov fiber lasers. Two essential properties of such laser systems-broad wavelength tunability and high efficiency of Cherenkov radiation wavelength conversion are discussed. The exceptional performance of the Cherenkov fiber laser systems are highlighted-dependent on the realization scheme, the Cherenkov lasers can generate the femtosecond output tunable across the entire visible and even the UV range, and for certain designs more than 40% conversion efficiency from the pump to Cherenkov signal can be achieved. The femtosecond Cherenkov laser with all-fiber architecture is presented and discussed. Operating in the visible range, it delivers 100-200 fs wavelength-tunable pulses with multimilliwatt output power and exceptionally low noise figure an order of magnitude lower than the traditional wavelength tunable supercontinuum-based femtosecond sources. The applications for Cherenkov laser systems in practical biophotonics and biomedical applications, such as bio-imaging and microscopy, are discussed.
机译:我们回顾了超快切伦科夫光纤激光器领域的最新发展。讨论了这种激光系统的两个基本特性,即宽波长可调性和切伦科夫辐射波长转换的高效率。重点介绍了契伦科夫光纤激光器系统的出色性能,具体取决于实现方案,契伦科夫激光器可以产生飞秒输出,该飞秒输出可在整个可见光范围甚至紫外线范围内调节,对于某些设计,泵的转换效率超过40%切伦科夫信号可以实现。提出并讨论了具有全光纤架构的飞秒切伦科夫激光器。它在可见光范围内工作,可提供100-200 fs的波长可调脉冲,具有数毫瓦的输出功率,并且异常低的噪声系数比传统的基于波长可调的超连续谱的飞秒光源低一个数量级。讨论了Cherenkov激光系统在实际生物光子学和生物医学应用(例如生物成像和显微镜)中的应用。

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